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无悬浮振动液滴:液体弹珠的共振振荡

Levitation-free vibrated droplets: resonant oscillations of liquid marbles.

作者信息

McHale G, Elliott S J, Newton M I, Herbertson D L, Esmer K

机构信息

School of Science and Technology, Nottingham Trent University, Clifton Lane, Nottingham NG11 8NS, United Kingdom.

出版信息

Langmuir. 2009 Jan 6;25(1):529-33. doi: 10.1021/la803016f.

Abstract

A spherical conducting droplet in an alternating electric field is known to undergo shape oscillations. When the droplet is supported by a substrate, the shape is no longer a complete sphere, but shape resonances are still observed. To obtain a completely spherical droplet, some kind of levitation is needed, unless the droplet is in microgravity, and this has previously been provided by gas films or magnetic or other external forces. In this work, we report observations of shape oscillations of a hydrophobic-powder-coated droplet of water. A droplet of water rolled on a hydrophobic powder self-coats such that the water becomes encapsulated as a liquid marble. When the powder is a spherical hydrophobic grain with a contact angle greater than 90 degrees , it adheres to the solid-water interface with more than half of its diameter projecting from the liquid, thus ensuring the encapsulated water does not come into contact with any substrate. These liquid marbles are highly mobile and can be regarded as completely nonwetting droplets possessing contact angles of 180 degrees . In this work, we show that they also provide a new mechanism equivalent to levitating droplets and provide droplets with small contact areas and completely mobile contact lines for studies of shape oscillations. Liquid marbles were created using hydrophobic lycopodium and droplets of water containing potassium chloride and were excited into motion using an electrowetting-on-dielectric configuration with applied frequency swept from 1 to 250 Hz. Both an up-and-down motion and an oscillation involving multiple nodes were observed and recorded using a high-speed camera. The resonant oscillation modes of small liquid marbles were fitted to the theory for vibrations of a free spherical volume of fluid. This work demonstrates the principle that oscillation modes of completely nonwetting droplets can be studied using a simple powder coating approach without the need for an active mechanism for levitation.

摘要

已知处于交变电场中的球形导电液滴会发生形状振荡。当液滴由基底支撑时,其形状不再是完整的球体,但仍能观察到形状共振。为了获得完全球形的液滴,需要某种悬浮方式,除非液滴处于微重力环境,此前这是通过气膜、磁力或其他外力来实现的。在这项工作中,我们报告了对涂有疏水粉末的水滴形状振荡的观察结果。一滴水在疏水粉末上滚动时会自行包裹,从而使水被封装成液体弹珠。当粉末是接触角大于90度的球形疏水颗粒时,它以超过其直径一半的部分从液体中伸出的方式附着在固 - 水界面上,从而确保被封装的水不会与任何基底接触。这些液体弹珠具有很高的流动性,可以被视为具有180度接触角的完全不润湿液滴。在这项工作中,我们表明它们还提供了一种等同于悬浮液滴的新机制,并为研究形状振荡提供了具有小接触面积和完全可移动接触线的液滴。使用疏水性石松粉和含有氯化钾的水滴制造了液体弹珠,并使用介电电泳配置将频率从1Hz扫频到250Hz来激发其运动。使用高速摄像机观察并记录了上下运动和涉及多个节点的振荡。将小液体弹珠的共振振荡模式与自由球形流体体积振动理论进行了拟合。这项工作证明了一个原理,即可以使用简单的粉末涂层方法研究完全不润湿液滴的振荡模式,而无需主动悬浮机制。

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